Ko e tokotaha naʻa ne ngaohi ʻa e Fibre Optic mafana sensor resistance, Founga vakaiʻi ʻo e ʻea, Fakapalofesinale OFETUKU/ODM Fale ngaohiʻanga, Wholesaler, Fakatau fakapatonu.

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ʻOku optic ʻe he filo ʻo e ʻea ʻa e meʻa fakapaʻanga ki he meʻa fakapaʻanga ʻo e ʻea

Filo optic e ʻea sensor resistance, Founga vakaiʻi ʻo e ʻatamai poto, Tufaki e filo optic ʻi Siaina

Maama tiupi filo optic e fua ʻo e ʻea Maama tiupi filo optic e meʻafua ʻo e ʻea Tufaki fluorescence filo optic e ʻea

The temperature controller of the switchgear is a temperature monitoring system that continuously monitors the operating temperature of the contacts inside the high-voltage switchgear to determine the degree of overheating at the contact joints. When overheating occurs, the instrument emits an alarm indication. Accurate and stable temperature measurement can be achieved in switchgear of various voltage levels. Please contact us by phone for specific prices.

Filo optic e founga fua ʻo e ʻea ki he switchgear
Ko e fiber optic temperature measurement system is composed of fluorescent fiber optic temperature transmitters and fluorescent fiber optic sensors, mo e alā meʻa pe. It realizes comprehensive temperature monitoring of power equipment such as oil immersed transformers, dry-type transformers, switchgear, reactors, generator stators, high-voltage cable joints, high-voltage busbar joints, knife switches, high-voltage cable cables, mo e alā meʻa pe. in power generation/substations. It can meet the precise point measurement inside the switchgear. The entire temperature sensing network is composed of fiber optic sensors, and the monitoring and transmission of fiber optic signals are completely free of electricity. Its excellent insulation performance does not cause lightning, and even if struck by lightning, the system can still work normally. By connecting through communication interfaces, it is possible to integrate power integrated systems, fire protection systems, mo e alā meʻa pe. into a more powerful power intelligent integrated monitoring system.

Temperature measurement solution for switchgear meʻa fakapaʻanga ʻo e ʻea:
Monitor the temperature of the switchgear and cable joints, and achieve temperature monitoring in both areas. ʻI he taimi tatau, the system should have expansion functions to facilitate future access of energy meter data.
There are 3 switchgear cabinets in Area A that require temperature measurement. Each switchgear cabinet monitors 6 points, totaling 18 points. ʻIkai ngata ai, there are 21 cable intermediate joints that require temperature measurement.
There are 3 switchgear cabinets in Zone B that require temperature measurement. Each switchgear cabinet monitors 6 points, totaling 18 points. ʻIkai ngata ai, there are 23 cable intermediate joints that require temperature measurement.
Other areas: The distribution of electricity meters is scattered, and in the future, according to the equipment renovation situation, on-site management machines can be connected nearby or new management machines can be added to achieve centralized data collection and publishing of electricity meters.

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